Investigation of Hydrodynamic Forces for Floating Offshore Wind Turbines on Spar Buoys and Tension Leg Platforms with the Mooring Systems in Waves

被引:11
|
作者
Lin, Yu-Hsien [1 ]
Kao, Shin-Hung [1 ]
Yang, Cheng-Hao [1 ]
机构
[1] Natl Cheng Kung Univ, Dept Syst & Naval Mechatron Engn, 1 Univ Rd, Tainan 70101, Taiwan
来源
APPLIED SCIENCES-BASEL | 2019年 / 9卷 / 03期
关键词
floating offshore wind turbine; mooring system; RAO; panel method; modular system; offshore wind;
D O I
10.3390/app9030608
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This study aims to develop a modularized simulation system to estimate dynamic responses of floating Offshore Wind Turbines (OWTs) based on the concepts of spar buoy and Tension Leg Platform (TLP) corresponding with two typical mooring lines. The modular system consists of the hydrodynamic simulator based the Cummins time domain equation, the Boundary Element Method (BEM) solver based on the 3D source distribution method, and an open-source visualization software ParaView to analyze the interaction between floating OWTs and waves. In order to realize the effects of mooring loads on the floating OWTs, the stiffness and damping matrices are applied to the quasi-static mooring system. The Response Amplitude Operators (RAOs) are compared between our predicted results and other published data to verify the modularized simulation system and understand the influence of mooring load on the motion responses in regular or irregular waves. It is also demonstrated that the quasi-static mooring system is applicable to different types of mooring lines as well as determining real-time motion responses. Eventually, wave load components at the resonance frequencies of different motion modes for selected floating OWTs would be present in the time domain.
引用
收藏
页数:28
相关论文
共 14 条
  • [1] Comparison study on mooring line models for hydrodynamic performances of floating offshore wind turbines
    Zhong, Wenjie
    Zhao, Weiwen
    Wan, Decheng
    Zhao, Yan
    OCEAN ENGINEERING, 2024, 296
  • [2] Incidence of wind spectrum and turbulence intensity on the design of mooring systems for floating offshore wind turbines
    Piscopo, V.
    Scamardella, A.
    OCEAN ENGINEERING, 2023, 290
  • [3] Prediction of mooring tension of floating offshore wind turbines by CNN-LSTM-ATT and Chebyshev polynomials
    Tang, Xiwei
    Huang, Wei
    Li, Xueyou
    Ma, Gang
    OCEAN ENGINEERING, 2025, 331
  • [4] Experimental investigation on the hydrodynamic effects of heave plates used in floating offshore wind turbines
    Zhang, Lixian
    Shi, Wei
    Michailides, Constantine
    Zheng, Siming
    Li, Ying
    OCEAN ENGINEERING, 2023, 267
  • [5] Hydrodynamic Response and Tension Leg Failure Performance Analysis of Floating Offshore Wind Turbine with Inclined Tension Legs
    Jia, Zhaolin
    Wu, Han
    Chen, Hao
    Li, Wei
    Li, Xinyi
    Lian, Jijian
    He, Shuaiqi
    Zhang, Xiaoxu
    Zhao, Qixiang
    ENERGIES, 2022, 15 (22)
  • [6] An experimental study of the effect of mooring systems on the dynamics of a SPAR buoy-type floating offshore wind turbine
    Hong, Sinpyo
    Lee, Inwon
    Park, Seong Hyeon
    Lee, Cheolmin
    Chun, Ho-Hwan
    Lim, Hee Chang
    INTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING, 2015, 7 (03) : 559 - 579
  • [7] On the influence of large amplitude nonlinear regular waves on the structural response of spar-type floating offshore wind turbines
    Nguyen, Hoa
    Chen, Lin
    Basu, Biswajit
    OCEAN ENGINEERING, 2023, 269
  • [8] Design strategy for resonance avoidance to improve the performance of tension leg platform-type floating offshore wind turbines
    Kim, Dongeun
    Bae, Yoon Hyeok
    Park, Semyung
    OCEAN ENGINEERING, 2024, 306
  • [9] Study on the mooring systems attaching clump weights and heavy chains for improving the typhoon resistance of floating offshore wind turbines
    Li, Jiawen
    Zuo, Hongli
    Zuo, Jingjing
    Jiang, Yichen
    Liu, Shi
    OCEAN ENGINEERING, 2024, 311
  • [10] Platform stabilization and load reduction of floating offshore wind turbines with tension-leg platform using dynamic vibration absorbers
    Wu, Zhongyou
    Li, Yaoyu
    WIND ENERGY, 2020, 23 (03) : 711 - 730